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Utilization of thorium and U-ZrH_(1.6) fuels in various heterogeneous cores for TRIGA PUSPATI Reactor (RTP)

机译:用于Triga Puspati反应器(RTP)的各种异质芯中钍和U-ZRH_(1.6)燃料的利用(RTP)

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The use of thorium as nuclear fuel has been an appealing prospect for many years and will be great significance to nuclear power generation. There is an increasing need for more research on thorium as Malaysian government is currently active in the national Thorium Flagship Project, which was launched in 2014. The thorium project, which is still in phase 1, focuses on the research and development of the thorium extraction from mineral processing ore. Thus, the aim of the study is to investigate other alternative TRIGA PUSPATI Reactor (RTP) core designs that can fully utilize thorium. Currently, the RTP reactor has an average neutron flux of 2.797 x 10~(12) cm~(-2)/s~(-1) and an effective multiplication factor, k_(eff), of 1.001. The RTP core has a circular array core configuration with six circular rings. Each ring consists of 6, 12, 18, 24, 30 or 36 U-ZrH_(1.6), fuel rods. There are three main type of uranium weight, namely 8.5, 12 and 20 wt.%. For this research, uranium zirconium hydride (U-ZrH_(1.6)) fuel rods in the RTP core were replaced by thorium (ThO2) fuel rods. Seven core configurations with different thorium fuel rods placements were modelled in a 2D structure and simulated using Monte Carlo n-particle (MCNPX) code. Results show that the highest initial criticality obtained is around 1.35101. Additionally there is a significant discrepancy between results from previous study and the work because of the large estimated leakage probability of approximately 21.7% and 2D model simplification.
机译:多年来,使用钍作为核燃料的使用者是一种吸引人的前景,对核电产生具有重要意义。随着马来西亚政府目前在2014年推出的国家钍旗舰项目目前积极积极的钍的更多研究越来越需要。钍项目仍处于1阶段,侧重于钍提取的研究和开发从矿物加工矿石。因此,该研究的目的是研究可以充分利用钍的其他替代Triga Puspati反应堆(RTP)核心设计。目前,RTP反应器的平均中子通量为2.797×10〜(12)cm〜(-2)/ s〜(-1),以及1.001的有效乘法因子K_(eff)。 RTP核心具有六个圆环的圆形阵列芯配置。每个环由6,12,18,24,30或36 U-ZRH_(1.6),燃料棒组成。有三种主要类型的铀体重,即8.5,12和20重量%。%。对于本研究,RTP核中的硫锆(U-ZRH_(1.6))燃料棒被钍(THO2)燃料棒代替。具有不同钍燃料棒的七种核心配置在2D结构中建模并使用蒙特卡罗N-粒子(MCNPX)代码进行模拟。结果表明,所获得的最高初始临界性约为1.35101。此外,由于大约21.7%和2D模型简化,以前研究和工作的结果与工作有显着差异。

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